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利用绿色活化剂从污水污泥制备活性炭及其对染料废水的处理性能

Preparation of activated carbon from sewage sludge using green activator and its performance on dye wastewater treatment.

作者信息

Lu Jintao, Zhang Qian, An Qing, Bu Tong, Feng Yuheng, Chen Dezhen, Qian Kezhen, Chen Hui

机构信息

Thermal and Environmental Engineering Institute, School of Mechanical Engineering, Tongji University, Shanghai, People's Republic of China.

Shanghai Engineering Research Center of Multi-source Solid Wastes Co-processing and Energy Utilization, Shanghai, People' s Republic of China.

出版信息

Environ Technol. 2023 Nov;44(25):3897-3910. doi: 10.1080/09593330.2022.2077130. Epub 2022 May 29.

Abstract

The remediation of dyes in wastewater using activated carbon produced from sewage sludge pyrolysis char (PYC) is an environmentally friendly and sustainable process. However, traditional activators can cause corrosion of the processing facility, thereby increasing the costs of waste disposal. Here, activated carbons were prepared from sewage sludge PYC, and the effects of activation conditions (different activators, temperature and time, and char:activator mass ratio) on their specific surface areas and adsorption of iodine and methylene blue (MB; model dye) were studied. The results showed that a value of 952 m/g could be attained for the specific surface area and values of 882 and 162 mg/g for the adsorption of iodine and MB, respectively, by heating PYC with KHCO (PYC- KHCO: 1:2 w/w) for 60 min at 800 ℃. Compared with activation by KOH, the adsorption of MB using PYC-KHCO was slightly lower but the yield was 13.7% higher. Optimization of the activation process using surface response modelling indicated that sensitivity of three key factors to the adsorption of iodine and MB followed the order: Mass ratio > temperature > time. Systematic investigation of the effects of time, pH and temperature on the removal of MB by the activated carbon revealed that adsorption conformed to the Langmuir model and pseudo-second-order kinetics. The proposed mechanisms of MB adsorption involved ion exchange, functional group complexation and physical/π-π interactions. This study provides a basis for the efficient remediation of dyes in wastewater using activated carbon prepared from sustainable sewage sludge PYC and green chemistry.

摘要

利用污水污泥热解炭(PYC)制备的活性炭对废水中的染料进行修复是一个环境友好且可持续的过程。然而,传统活化剂会导致加工设备腐蚀,从而增加废物处理成本。在此,由污水污泥PYC制备了活性炭,并研究了活化条件(不同活化剂、温度和时间以及炭与活化剂的质量比)对其比表面积以及碘和亚甲基蓝(MB;模型染料)吸附的影响。结果表明,通过在800℃下将PYC与KHCO₃(PYC - KHCO₃:1:2 w/w)加热60分钟,比表面积可达到952 m²/g,碘和MB的吸附值分别为882和162 mg/g。与KOH活化相比,使用PYC - KHCO₃对MB的吸附略低,但产率高13.7%。使用表面响应模型对活化过程进行优化表明,三个关键因素对碘和MB吸附的敏感性顺序为:质量比>温度>时间。对时间、pH值和温度对活性炭去除MB效果的系统研究表明,吸附符合朗缪尔模型和准二级动力学。提出的MB吸附机制涉及离子交换、官能团络合和物理/π - π相互作用。本研究为利用可持续污水污泥PYC制备的活性炭和绿色化学高效修复废水中的染料提供了依据。

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